As shown below, a sign weighing 162 N is hanging (via a wire) from a uniform 218 N beam of length L. Additionally, the beam is attached to a cable that makes an angle 0 (0 = 57°) with the beam. 0.2 L 0.3 L 101 Determine the tension in the cable and the magnitude & direction of the force the hinge (the orange circle) exerts on the beam. Cable tension = 1589.42 N Hinge force = Direction of hinge force = in quadrant - Choose quadrant -- ✓ ° relative to the vertical

Principles of Physics: A Calculus-Based Text
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Chapter10: Rotational Motion
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As shown below, a sign weighing 162 N is hanging (via a wire) from a uniform 218 N beam of length L.
Additionally, the beam is attached to a cable that makes an angle 0 (0 = 57°) with the beam.
0.2 L
0.3 L
101
Determine the tension in the cable and the magnitude &
direction of the force the hinge (the orange circle) exerts on
the beam.
Cable tension = 1589.42 N
Hinge force =
Direction of hinge force =
in quadrant - Choose quadrant -- ✓
° relative to the vertical
Transcribed Image Text:As shown below, a sign weighing 162 N is hanging (via a wire) from a uniform 218 N beam of length L. Additionally, the beam is attached to a cable that makes an angle 0 (0 = 57°) with the beam. 0.2 L 0.3 L 101 Determine the tension in the cable and the magnitude & direction of the force the hinge (the orange circle) exerts on the beam. Cable tension = 1589.42 N Hinge force = Direction of hinge force = in quadrant - Choose quadrant -- ✓ ° relative to the vertical
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